Influence of altitude on two-stage turbocharging system in a heavy-duty diesel engine based on analysis of available flow energy
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Influence of altitude on two-stage turbocharging system in a heavy-duty diesel engine based on analysis of available flow energy

机译:基于可用流动能量分析的重型柴油机海拔高度对两级涡轮增压系统的影响

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Highlights?Influence of altitude on characteristics of two-stage turbines is firstly demonstrated.?Mechanism of influence of altitude on two turbines is understood by the energy analysis.?The energy fed to turbocharger is more sensitive to high pressure turbine.?Energy split to low pressure turbine is more sensitive to the variation of altitude.AbstractUnderstanding characteristics of a regulated two-stage turbocharging system is key to maximize its potential for power recovery of an engine at high altitudes. The target of this paper is to understand the influence of the altitude on the performance of a regulated two-stage turbocharging system in Internal Combustion Engine. The investigation is performed in perspective of available flow energy in a heavy-duty diesel engine via analytical and experimental methods as the altitude increases from 0 km up to 4.5?km. Results demonstrate significant effects of the altitude on the flow energy fed to the turbocharging system and energy split between two turbines: the energy fed to the system increases with the altitude due to the increase of exhaust temperature and pressure ratio, but the energy deficit of power recovery also increases with the altitude. The overall available flow energy is more sensitive to the high pressure turbine because of its relatively smaller effective flow area. But the energy split to the low pressure turbine is more sensitive to the altitude, which is caused by behaviors of pressure ratio split between two turbines. New directions of optimized regulating method of a two-stage turbocharging system are suggested according to the investigation for the engine performance at different altitudes.]]>
机译:<![cdata [ 亮点 高度对两级涡轮机特性的影响首先进行了演示。 高度影响的机制通过能量分析理解两个涡轮机。 送到涡轮增压器的能量对高压涡轮机更敏感。 能量分裂到低压tu rbine对高度的变化更敏感。 抽象 理解调节的两级涡轮增压系统的特性是最大化其在高海拔的发动机电力恢复潜力的关键。本文的目标是了解海拔对内燃机中规定的两级涡轮增压系统的影响。通过分析和实验方法在重型柴油发动机中的可用流动能量的角度来进行调查,因为海拔高度从0.5英里增加到4.5英里。结果表明海拔高度对进料到涡轮增压系统的流动能量和两个涡轮机之间的能量分裂的显着影响:由于排气温度和压力比的增加而馈送到系统的能量随高度而增加,但功率的能量缺陷恢复也随高度而增加。由于其相对较小的有效流动区域,整体可用流量对高压涡轮机更敏感。但是,对低压涡轮机的能量对高度更敏感,这是由两个涡轮机之间的压力比的行为引起的。根据不同海拔地区发动机性能的调查,提出了两级涡轮增压系统优化调节方法的新方向。 ] ]

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